Chronic Ethanol Inhibits Inositol Metabolism In Specific Brain Regions

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Endocannabinoids and related N-acylethanolamines: biological

transmembrane regions, the sequence identity increases to 68%. CB1 receptor exists in abundance at the presynaptic terminals in the various regions of the brain, including substantia nigra, striatum, hippocampus, and cerebral cortex, and negatively regulates the release of the neurotransmitters. CB1 is therefore the principal


Inhibition Predicts the Interaction of Ethanol with GABA on Darin J. Knapp, Leslie L. Devaud, Individual Neurons in Several Rat Brain Regions Thomas J. McCown, Gary E. Duncan, A. Leslie Morrow and George R. Breese PROSTAGLANDINS, LEUKOTRIENES AND OTHER EICOSANOIDS


Ethanol Modulation of the •y-AminobutyricAcidA- and Glycine-Activated Cl~ Current in Cultured Mouse Neurons Pharmacological Evidence for Regulation of Vt*-( a+~ Exchange by Ca++/Calmodulin-Dependent Protein Kinase in Isolated Bovine Adrenal Medullary Cells Chronic Ethano) Exposure Inhibits ATP-Stimulated but not